Lai Runing, Shi Pengcheng, Yi Zao, Li Hailiang, Yi Yougen
Joint Laboratory for Extreme Conditions Matter Properties, Southwest University of Science and Technology, Mianyang 621010, China.
School of Chemistry and Chemical Engineering, Jishou University, Jishou 416000, China.
Micromachines (Basel). 2023 Apr 27;14(5):953. doi: 10.3390/mi14050953.
This paper introduces a novel metamaterial absorber based on surface plasmon resonance (SPR). The absorber is capable of triple-mode perfect absorption, polarization independence, incident angle insensitivity, tunability, high sensitivity, and a high figure of merit (FOM). The structure of the absorber consists of a sandwiched stack: a top layer of single-layer graphene array with an open-ended prohibited sign type (OPST) pattern, a middle layer of thicker SiO, and a bottom layer of the gold metal mirror (Au). The simulation of COMSOL software suggests it achieves perfect absorption at frequencies of = 4.04 THz, = 6.76 THz, and = 9.40 THz, with absorption peaks of 99.404%, 99.353%, and 99.146%, respectively. These three resonant frequencies and corresponding absorption rates can be regulated by controlling the patterned graphene's geometric parameters or just adjusting the Fermi level (). Additionally, when the incident angle changes between 0~50°, the absorption peaks still reach 99% regardless of the kind of polarization. Finally, to test its refractive index sensing performance, this paper calculates the results of the structure under different environments which demonstrate maximum sensitivities in three modes: = 0.875 THz/RIU, = 1.250 THz/RIU, and = 2.000 THz/RIU. The FOM can reach FOM = 3.74 RIU, FOM = 6.08 RIU, and FOM = 9.58 RIU. In conclusion, we provide a new approach for designing a tunable multi-band SPR metamaterial absorber with potential applications in photodetectors, active optoelectronic devices, and chemical sensors.
本文介绍了一种基于表面等离子体共振(SPR)的新型超材料吸收器。该吸收器能够实现三模完美吸收、偏振无关性、入射角不敏感性、可调谐性、高灵敏度以及高优值(FOM)。吸收器的结构由一个夹层堆叠组成:顶层是具有开放式禁止标志图案(OPST)的单层石墨烯阵列,中间层是较厚的SiO,底层是金金属镜(Au)。COMSOL软件的模拟表明,它在频率 = 4.04太赫兹、 = 6.76太赫兹和 = 9.40太赫兹处实现了完美吸收,吸收峰值分别为99.404%、99.353%和99.146%。这三个共振频率和相应的吸收率可以通过控制图案化石墨烯的几何参数或仅仅调整费米能级()来调节。此外,当入射角在0~50°之间变化时,无论偏振类型如何,吸收峰值仍能达到99%。最后,为了测试其折射率传感性能,本文计算了该结构在不同环境下的结果,结果表明在三种模式下具有最大灵敏度: = 0.875太赫兹/RIU、 = 1.250太赫兹/RIU和 = 2.000太赫兹/RIU。优值可以达到FOM = 3.74 RIU、FOM = 6.08 RIU和FOM = 9.58 RIU。总之,我们提供了一种设计可调谐多波段SPR超材料吸收器的新方法,该吸收器在光电探测器、有源光电器件和化学传感器中具有潜在应用。